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一种用于评估全髋关节置换术后取出双动式人工髋关节衬垫尺寸变化的几何评估方法。

A geometric assessment method for estimating dimensional change of retrieved dual mobility liners for total hip arthroplasty.

机构信息

Institute of Medical and Biological Engineering, University of Leeds, Leeds, UK.

DePuy Synthes Joint Reconstruction, Leeds, UK.

出版信息

Proc Inst Mech Eng H. 2023 Jun;237(6):782-787. doi: 10.1177/09544119231176112. Epub 2023 May 24.

Abstract

Despite their emerging use, the current understanding of the in-vivo functional mechanisms of Dual Mobility (DM) Total Hip Replacements (THRs) is poor, and current characterisation methodologies are not suitable for the unique function and design of these types of devices. Therefore, the aim of this study was to develop a geometric characterisation methodology to estimate dimensional change across the articulating surfaces of retrieved DM polyethylene liners so that their invivo function may be better understood. The method involves the acquisition of three-dimensional coordinate data from the internal and external surfaces of DM liners. The data is processed using a bespoke MATLAB script which approximates the unworn reference geometry of each surface, calculates geometric variance at each point and produces surface deviation heatmaps so that areas of wear and/or deformation may be visualised across the implant. One as-manufactured and five retrieved DM liners were assessed, which demonstrated the efficacy, repeatability and sensitivity of the developed method. This study describes an automated and non-destructive approach for assessing retrieved DM liners of any size and from any manufacturer, which may be used in future research to improve our understanding of their in-vivo function and failure mechanisms.

摘要

尽管双动(DM)全髋关节置换术(THR)的应用日益广泛,但目前对其体内功能机制的了解仍很有限,而且现有的表征方法并不适用于这些类型设备的独特功能和设计。因此,本研究旨在开发一种几何特征描述方法,以估计从取出的 DM 聚乙烯衬垫的关节表面上的尺寸变化,从而更好地了解其体内功能。该方法涉及从 DM 衬垫的内部和外部表面获取三维坐标数据。数据由一个定制的 MATLAB 脚本进行处理,该脚本可以近似每个表面的未磨损参考几何形状,计算每个点的几何方差,并生成表面偏差热图,以便可以在植入物上可视化磨损和/或变形区域。评估了一个制造的和五个取出的 DM 衬垫,证明了所开发方法的有效性、可重复性和敏感性。本研究描述了一种自动且非破坏性的方法,可用于评估任何尺寸和任何制造商的取出的 DM 衬垫,这可用于未来的研究,以提高我们对其体内功能和失效机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b74/10291107/bfc889304487/10.1177_09544119231176112-fig1.jpg

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